Abstract:
Technologies for dynamically implementing an image protection policy include a camera device with a camera to capture an image of at least one person. The camera device determines a location in the image of at least one person in the image, determines a location of at least one personal computing device, and maps the personal computing devices to the persons captured in the image based on the determined device and image locations. The camera device may broadcast an announcement of the creation of the image to the personal computing devices, negotiate an image protection policy with each of the personal computing devices, and implement the negotiated image protection policy.
Abstract:
Technologies for resource management include a mobile computing device configured to communicate with a resource database server. The mobile computing device determines a future context and sends a request to the server for resource information associated with a location defined by the future context. The server determines resources located at the location and sends the requested resource information to the mobile computing device. The mobile computing device automatically configures itself to use the resources. The mobile computing device may automatically download and configure device drivers for the resources. The resources may include printers, displays, and network connections. The resource information may be provided by third-party resource providers. The resource database server may provide recommendations, including travel information recommendations. The mobile computing device may monitor its current context and enable the resources at the location or notify a user of the availability of the resources.
Abstract:
Technologies for crowdsourced media streaming include a number of mobile computing devices configured to capture media streams and transmit the media streams to a media server. The media server associates the media streams with metadata describing the media streams, including metadata describing an event captured in the media stream. The media server also processes the media streams to generate additional metadata. A number of client computing devices may submit media stream requests to the media server, and the media server contemporaneously streams matching media streams to the client computing devices as the media streams are captured by the mobile computing devices. The client computing devices may transmit feedback information relating to the media stream to the source mobile computing device via the media server. The client computing devices may display the media streams alongside or overlaying other media such as a broadcast media event. Other embodiments are described and claimed.
Abstract:
The present disclosure describes a number of embodiments related to devices, systems, and methods for storing food that may include one or more sensors to collect sensor data associated with one or more food items, and one or more computer processors running a food condition module communicatively coupled to the plurality of sensors to determine a condition of the one or more food items by processing the sensor data to identify the one or more food items and one or more attributes of the one or more food items, and determine a condition of the one or more food items based on the one or more attributes of the one or more food items, and menu opportunity and restocking modules to aid the efficient and intelligent consumption of food.
Abstract:
Technologies are presented that provide collaborative context-based user tracking and communications. A method of tracking communication options may include receiving, from one or more user devices of a user, user proximity information that indicates whether the user is in proximity of the one or more user devices; receiving, from the user devices, tracking loss warnings that indicate that loss of capabilities to track the user by respective user devices may be imminent; receiving, from the user devices, secondary device proximity information that indicates whether the user device is in proximity of one or more secondary devices; and receiving, from the secondary devices, additional user proximity information that indicates whether the user is in proximity of the one or more secondary devices. The method may further include dynamically determining from the received information which of the user devices and secondary devices are able to provide communications to the user.
Abstract:
Various embodiments are generally directed to the provision and use of multiple person biometric authentication systems. An apparatus including a processor element and logic executable by the processor component is disclosed. The logic is configured to cause the apparatus to receive information including an indication of a plurality of biometric measurements and generate a combined biometric indicator based in part on the plurality of biometric measurements. The combined biometric indicator can be generated using fuzzy hashing techniques.
Abstract:
Generally, this disclosure describes a method and system for authenticating to a network via a device-specific one-time password. A method in an embodiment may include generating a first one-time password (OTP) based at least in part on a plurality of client device attributes; and providing the first OTP to an authenticator associated with a private network during a first session, wherein the authenticator is configured to authenticate the client device to at least one of the private network and protected content included in the private network for a second session following the first session based on the provided first OTP.
Abstract:
Various embodiments are generally directed to the provision and use of multiple person biometric authentication systems. An apparatus including a processor element and logic executable by the processor component is disclosed. The logic is configured to cause the apparatus to receive information including an indication of a plurality of biometric measurements and generate a combined biometric indicator based in part on the plurality of biometric measurements. The combined biometric indicator can be generated using fuzzy hashing techniques.
Abstract:
Embodiments described herein relate generally to providing information through tactility. A computer system may receive an input from a user. The computer system may identify one or more locations associated with haptic elements disposed on a wearable haptic apparatus. The computer system may generate a message that includes an indication of the one or more locations. The computer system may transmit this message to the wearable haptic apparatus. The wearable haptic apparatus may actuate one or more haptic elements disposed thereon based on the indication of the one or more locations included in the message. Other embodiments may be described and/or claimed.
Abstract:
Technologies for dynamically implementing an image protection policy include a camera device with a camera to capture an image of at least one person. The camera device determines a location in the image of at least one person in the image, determines a location of at least one personal computing device, and maps the personal computing devices to the persons captured in the image based on the determined device and image locations. The camera device may broadcast an announcement of the creation of the image to the personal computing devices, negotiate an image protection policy with each of the personal computing devices, and implement the negotiated image protection policy.